Identification of cellulose-responsive bacterial and fungal communities in geographically and edaphically different soils by using stable isotope probing.

scientific article published on 27 January 2012

Identification of cellulose-responsive bacterial and fungal communities in geographically and edaphically different soils by using stable isotope probing. is …
instance of (P31):
scholarly articleQ13442814

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P356DOI10.1128/AEM.07313-11
P932PMC publication ID3302591
P698PubMed publication ID22287013

P50authorStephanie A. EichorstQ37616774
P2093author name stringCheryl R Kuske
P2860cites workIdentification of cellulolytic bacteria in soil by stable isotope probingQ48081587
Identification of active methylotroph populations in an acidic forest soil by stable-isotope probingQ48287891
Rhizophlyctidales—a new order in ChytridiomycotaQ54790815
Coprinus comatus: A basidiomycete fungus forms novel spiny structures and infects nematodeQ82841247
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A molecular phylogeny of the flagellated fungi (Chytridiomycota) and description of a new phylum (Blastocladiomycota)Q22255398
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Rapid determination of 16S ribosomal RNA sequences for phylogenetic analysesQ24609392
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Evolution of nematode-trapping cells of predatory fungi of the Orbiliaceae based on evidence from rRNA-encoding DNA and multiprotein sequencesQ24685289
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Pyrosequencing-based assessment of soil pH as a predictor of soil bacterial community structure at the continental scaleQ29617333
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Edaphobacter modestus gen. nov., sp. nov., and Edaphobacter aggregans sp. nov., acidobacteria isolated from alpine and forest soilsQ31154162
Dynamics and identification of soil microbial populations actively assimilating carbon from 13C-labelled wheat residue as estimated by DNA- and RNA-SIP techniquesQ33273661
Bryobacter aggregatus gen. nov., sp. nov., a peat-inhabiting, aerobic chemo-organotroph from subdivision 3 of the AcidobacteriaQ33489996
Metabolic responses of novel cellulolytic and saccharolytic agricultural soil Bacteria to oxygenQ33522020
Granulicella paludicola gen. nov., sp. nov., Granulicella pectinivorans sp. nov., Granulicella aggregans sp. nov. and Granulicella rosea sp. nov., acidophilic, polymer-degrading acidobacteria from Sphagnum peat bogsQ33527754
Influence of plant polymers on the distribution and cultivation of bacteria in the phylum AcidobacteriaQ33753544
Root controls on soil microbial community structure in forest soilsQ34503504
Three genomes from the phylum Acidobacteria provide insight into the lifestyles of these microorganisms in soilsQ34939991
Accurate, rapid taxonomic classification of fungal large-subunit rRNA genesQ35804768
Living in a fungal world: impact of fungi on soil bacterial niche developmentQ36231168
Transcriptional profiling of Caulobacter crescentus during growth on complex and minimal mediaQ36239087
Degradation of cellulose by basidiomycetous fungiQ37120957
Decomposing ability of filamentous fungi on litter is involved in a subtropical mixed forestQ39478329
Contrasting soil pH effects on fungal and bacterial growth suggest functional redundancy in carbon mineralizationQ43163262
Stable isotope probing of rRNA and DNA reveals a dynamic methylotroph community and trophic interactions with fungi and protozoa in oxic rice field soilQ44700336
Phylogenetic position of Chitinophaga pinensis in the Flexibacter-Bacteroides-Cytophaga phylumQ45313275
Disruption of root carbon transport into forest humus stimulates fungal opportunists at the expense of mycorrhizal fungiQ48065722
P4510describes a project that usesstable isotopeQ878130
P433issue7
P407language of work or nameEnglishQ1860
P921main subjectstable isotopeQ878130
fungal communityQ109276234
P304page(s)2316-2327
P577publication date2012-01-27
P1433published inApplied and Environmental MicrobiologyQ4781593
P1476titleIdentification of cellulose-responsive bacterial and fungal communities in geographically and edaphically different soils by using stable isotope probing
P478volume78

Reverse relations

cites work (P2860)
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